EP1382291B1 - Device for irrigation of a body cavity - Google Patents

Device for irrigation of a body cavity Download PDF

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Publication number
EP1382291B1
EP1382291B1 EP03090226A EP03090226A EP1382291B1 EP 1382291 B1 EP1382291 B1 EP 1382291B1 EP 03090226 A EP03090226 A EP 03090226A EP 03090226 A EP03090226 A EP 03090226A EP 1382291 B1 EP1382291 B1 EP 1382291B1
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EP
European Patent Office
Prior art keywords
pressure
pump
medical instrument
rinsing
suction
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
EP03090226A
Other languages
German (de)
French (fr)
Other versions
EP1382291A3 (en
EP1382291A2 (en
Inventor
Fabian Haischmann
Thomas Merzhaeuser
Matthias Stiller
Martin Reuther
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
WOM World of Medicine GmbH
Original Assignee
WOM World of Medicine GmbH
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Filing date
Publication date
Application filed by WOM World of Medicine GmbH filed Critical WOM World of Medicine GmbH
Publication of EP1382291A2 publication Critical patent/EP1382291A2/en
Publication of EP1382291A3 publication Critical patent/EP1382291A3/en
Application granted granted Critical
Publication of EP1382291B1 publication Critical patent/EP1382291B1/en
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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B17/00Surgical instruments, devices or methods, e.g. tourniquets
    • A61B17/32Surgical cutting instruments
    • A61B17/320016Endoscopic cutting instruments, e.g. arthroscopes, resectoscopes
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M1/00Suction or pumping devices for medical purposes; Devices for carrying-off, for treatment of, or for carrying-over, body-liquids; Drainage systems
    • A61M1/71Suction drainage systems
    • A61M1/74Suction control
    • A61M1/743Suction control by changing the cross-section of the line, e.g. flow regulating valves
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M1/00Suction or pumping devices for medical purposes; Devices for carrying-off, for treatment of, or for carrying-over, body-liquids; Drainage systems
    • A61M1/71Suction drainage systems
    • A61M1/77Suction-irrigation systems
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B17/00Surgical instruments, devices or methods, e.g. tourniquets
    • A61B17/00234Surgical instruments, devices or methods, e.g. tourniquets for minimally invasive surgery
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M2205/00General characteristics of the apparatus
    • A61M2205/33Controlling, regulating or measuring
    • A61M2205/3331Pressure; Flow
    • A61M2205/3344Measuring or controlling pressure at the body treatment site
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M2205/00General characteristics of the apparatus
    • A61M2205/33Controlling, regulating or measuring
    • A61M2205/3331Pressure; Flow
    • A61M2205/3351Controlling upstream pump pressure
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M2205/00General characteristics of the apparatus
    • A61M2205/33Controlling, regulating or measuring
    • A61M2205/3331Pressure; Flow
    • A61M2205/3355Controlling downstream pump pressure

Definitions

  • the invention relates to a device for flushing a body cavity with a fluid, with a reservoir for the fluid, with a connected to the reservoir, controllable flushing pump, with a connected to a pressure side of the flushing pump supply line and with a connected to the supply line first medical instrument a flushing channel, which is insertable into the body cavity, wherein the pressure side of the flushing pump, a pressure sensor for determining an actual pressure is set up, with an insertable into the body cavity drainage cannula with drainage line, with an insertable into the body cavity second medical instrument with suction, wherein a through the body cavity adjustable volume flow in accordance with an operating position "on” or “off” of the second medical instrument "high” or “low”, wherein the drainage cannula and the suction are connected to a suction pump, a method to m operation of such a device and a use of such a device.
  • a body cavity may be a joint cavity, eg in a knee joint or shoulder joint, a cavity between muscles or organs, or even an organ forming or having a holoharp.
  • a fluid is in particular a liquid. It can be to be a homogeneous liquid phase or to a dispersion or emulsion.
  • a drainage cannula in the sense of the invention can also fulfill other functions in addition to the drainage function, such as, for example, illuminating the body cavity via a light source integrated in the drainage cannula.
  • Different volume flows at different operating positions are differentiated within the scope of the invention by the terms "high” and "low", the absolute values being irrelevant. Rather, these terms merely express how the volume flows are relative to one another in the respective operating positions of the second medical instrument.
  • a device according to the preamble of claim 1 is known from US 6,024,277 known.
  • the invention is based on the technical problem to provide a device for flushing a body cavity with a fluid, by means of which all requirements sufficient control of flow and pressure achieved without the need for signal lines and whatever the second medical device used.
  • the invention teaches in the characterizing part of claim 1 that alone the drainage line is equipped with controllable means for varying the flow resistance, that rinsing pump, pressure sensor and means for varying the flow resistance to control inputs or outputs of a control unit are connected by means of the control unit, a drop of the measured by the pressure sensor actual pressure of a predetermined target pressure at switching the second medical instrument from the operating position "off" to "on” detectable and in a control signal for the means for varying the flow resistance, the purge pump and / or the suction pump is convertible, in accordance with a preset target flow rate of the flushing pump and / or the suction pump for the operating position "on” and the desired pressure, and vice versa.
  • the suction of the fluid from the body cavity takes place essentially via the drainage line.
  • the shaver in the operating position "on” as a bypass namely the suction line to the drainage line is activated with the result of a (short-term) pressure drop in the body cavity.
  • This pressure drop is detected, with the result that the flow by controlling the purge pump on a preselected (higher than Shaver "off") value is ramped up.
  • the pressure control can then take place at constant flow by controlling the suction pump.
  • the flow and pressure in the body cavity are independently controllable and constant durable independently of the operating position of the second medical instrument.
  • the control of the flow takes place with the inventive means for varying the flow resistance faster than with a variable speed roller pump due to the lower masses and moments of inertia of the means for varying the flow resistance.
  • the adaptation of the flow and, if necessary, adjustment or readjustment of the pressure takes place in accordance with the operating setting "on" or "off” of the second medical device. It is also advantageous that pressure fluctuations occurring in the body cavity are detected by the system within a very short time and corrected to the desired value of the pressure, so that the pressure in the body cavity is kept practically constant even with changes between the operating positions of the second medical instrument.
  • any medical instrument can be used without extensive adaptation of signal lines and connectors, as control and regulation mechanisms in each case provide for adjustment and maintenance of the preset values for pressure and flow.
  • the arrangement of the means for varying the flow resistance in the context of the drainage line is technically advantageous because the pressure and flow control as it runs after the medical instrument is turned on, thereby avoiding health-threatening pressure peaks. At the same time Any leaks are automatically taken into account and compensated for by the overrun of the control automatically and without additional measures. Ultimately, a practically constant body cavity expansion and a correspondingly good view is achieved by endoscopic optics.
  • the first medical instrument can be selected from the group consisting of "irrigation probe, irrigation cannula, trocar with optics and optics with irrigation channel"
  • the flushing pump may have a drive unit with a motor with a rotating output shaft and with the output shaft (mechanical, ie cohesively, positively or non-positively, or magnetically, ie non-positively) connected and rotationally driven pump unit, the flow rate can be controlled by controlling the speed of the motor , In particular, insofar as a peristaltic roller pump comes into question.
  • the rinsing pump can have an elastic reservoir with a supply container partially odder or completely enveloping controllable Druckmaschette, wherein the delivery rate can be controlled by driving the pressure cuff.
  • the flushing pump may comprise a height-controllable reservoir, wherein the flow rate can be controlled by controlling the height of the reservoir.
  • the second medical device may be selected from the group consisting of "shaver, sampler and suction probe". Particularly in the case of a shaver, it is recommended that the volume flow through the second medical instrument in the operating position "on” is “high” and vice versa. But it is possibly also the reverse context possible.
  • control unit and the components connected thereto can be hydraulically, pneumatically or electrically operated or controlled.
  • the electrical or electromechanical operation is preferred.
  • the means for varying the flow resistance can be proportional, continuous or in a plurality of discrete steps, controllable. It is preferred that the means for varying the flow resistance is a Schlauchabklemmvorraum with a hose.
  • the hose wall of the hose then consists of an elastic material.
  • the means for varying the flow resistance with a support surface, on which the hose wall of the hose rests have and be equipped with a pressure piece, by means of which on the hose wall pressure in the direction of the support surface can be exerted. It is preferred that the pressure piece is linearly driven and connected via a spindle gear with an electric motor drive, preferably a stepping motor.
  • non-linear functions can also be set up between a control signal and the movement of the pressure piece.
  • An example of this would be a rotating linearly driven round eccentric disc, whose lateral surface runs against the hose wall or a pressure piece.
  • a cam disc can be set up any kinematics.
  • the invention further teaches a method for operating a device according to the invention, wherein when switching a second medical instrument between two operating positions, which are correlated with different flow through the suction, a pressure change is detected by means of the pressure sensor and the control unit, wherein by means of the control unit to detection a pressure change, the means for varying the flow resistance are controlled in accordance with the adjustment to a predetermined and the active operating position of the second medical instrument associated desired flow and / or target pressure.
  • Control technology it is recommended that on detection of a pressure change additionally the flushing pump and / or the suction pump are controlled by the control unit in accordance with the adjustment to a predetermined and the active operating position of the second medical instrument associated desired flow and / or target pressure.
  • FIG. 1 a device for flushing a body cavity 1 with a fluid.
  • This device is equipped with a reservoir 2 for the fluid and with a connected to the reservoir 2, controllable flushing pump 3.
  • a supply line 4 is connected on a pressure side of the flushing pump 3.
  • the supply line 4 is provided with a first medical instrument with a flushing channel 5, which is insertable into the body cavity 1.
  • a pressure sensor 6 is set up to determine an actual pressure.
  • the illustrated embodiment is equipped with an insertable into the body cavity 1 simple drainage cannula 7 with drainage line 8 and with an insertable into the body cavity 1 second medical instrument 9 with suction 10, wherein an adjustable through the body cavity 1 volume flow in accordance with an operating position "on” or “out” of the second medical instrument 9 is "high” or “low”.
  • the drainage cannula 7 and the suction line 10 are connected to a suction pump 11.
  • the drainage line 8 contains controllable means for varying the flow resistance 12.
  • Both rinsing pump 3, pressure sensor 6 and means for variation the flow resistance 12 are connected to control inputs or outputs of a control unit 13.
  • FIG. 2 It can be seen a structurally particularly suitable means for varying the flow resistance 12. It is a Schlauchabklemmvorraum with a hose 14, the hose wall 15 is made of an elastic material.
  • the Schlauchabklemmvorraum has a support surface 16 on which the hose rests 14, and a pressure piece 17, by means of which on the hose wall 15 pressure in the direction of the support surface can be exercised.
  • the pressure piece 17 is connected via a spindle gear 18 with an electric motor drive 19.
  • the suction pump 11 runs with a suction power, which corresponds to the use of a shaver 9 in the operating position "on” corresponding flow, and is reduced in the operating position "off" of the control 13 by proportional and continuously adjustable Schlauchabklemmung 12 to the desired drainage performance.
  • a suction power which corresponds to the use of a shaver 9 in the operating position "on” corresponding flow, and is reduced in the operating position "off” of the control 13 by proportional and continuously adjustable Schlauchabklemmung 12 to the desired drainage performance.
  • In the operating position "on” is formed by the suction line 10 via the shaver a bypass, which leads to the drainage line 8 over.
  • the body cavity internal pressure decreases due to the addition of the two volume flows through drainage line 8 and suction line 10. This pressure drop is registered very quickly by the pressure sensor 6.
  • the control unit 11 connected to the pressure sensor 6 detects the waste and thereby recognizes the operating position "on" of the shaver and, via a control signal, activates the hose clamping device 12, which disconnects the drainage line 8. simultaneously the purge pump 3 is driven to increase the pump power to a preselected value.
  • the pressure control is carried out by changing the pump power in accordance with the preselected pressure, which basically and independently of this specific embodiment may also have different preselected values for the operating positions of the second medical instrument.
  • the shaver is turned off, due to the lack of drainage flow through the suction line 10, the body cavity internal pressure briefly increases. The increase of the pressure above the preselected internal pressure is also registered by the pressure sensor 6; the reverse processes take place as described above.
  • the pressure can be regulated via the pumping power of the flushing pump 3, via the pumping power of the suction pump 11 and / or via the hose clamping device 12.
  • FIG. 3 shows a hose set for a device according to the invention with a T-piece 20 and connected to the tee 20 hoses 21,22,23, wherein a first tube 21 is intended for connection to a second medical instrument 9, wherein a second tube 22 at least forms a part of the drainage line 8, wherein a third tube 23 is intended for connection to the suction pump 11, wherein optionally the first tube 21 and the third tube 23 made of a polymer having a hardness of at least Shore A 70, preferably 75, and the second tube 22 is formed of a polymer having a hardness of less than Shore A 70, preferably 65.
  • the T-piece 20 is formed of a dimensionally stable plastic and form-fitting complementary to a designed in structural unit with a means for varying the flow resistance 12 T-piece Form gleichausEnglishung 24 is formed.
  • the structural unit of means for varying the flow resistance 12 and T-piece Form gleichausEnglishung 24 is optionally releasably attached to a device wall, which in turn carries the drive means for the pressure piece 17 whereby the pressure piece 17 against the support surface 16 driven and thus the second tube 22nd is clamping.
  • the second tube 22 at least in the area between the pressure piece 17 and the support surface has the lower Shore hardness described above.
  • the suction pump 11 is operated with a suction capacity (flow, speed, rotational speed) which is adjustable and thus predetermined to a value which is appropriate for the operation of the second medical instrument 9, for example a shaver 9, but not in dependence on the pressure in the body cavity 1 is regulated and / or controlled. Rather, the suction pump 11 is continuously driven by the control unit 13 at a speed corresponding to the desired flow through the second medical instrument 9 in its activated operating condition. As a result, a negative pressure is generated in the hoses between the suction pump 11, the second medical instrument 9 and the means for varying the flow resistance 12.
  • a suction capacity flow, speed, rotational speed
  • the flow through the second medical instrument 9 increases from zero or a minimum value to the operating value, wherein the operating value of the flow of the setting of the speed of the suction pump 11, as adjusted by an operator or by Programming the control unit 13 determines depends.
  • the increase in flow through the second medical instrument 9 results in a pressure drop in the patient Body cavity 1.
  • the control unit 13 increases the flow through the mud pump, for example by increasing the speed to compensate for the pressure drop.
  • control unit 13 additionally controls the means for varying the flow resistance 12 to increase the flow resistance, thereby reducing the total flow from the body cavity 1 is reduced to the suction pump 11.
  • the means for variant of the flow resistance 12 are actuated to a setting below the maximum flow resistance when the second medical instrument 9 is not activated.

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Abstract

The device has a fluid reservoir connected to a flushing pump, a delivery line and a first medical instrument with a flushing channel for insertion into a body cavity, a pressure sensor, a drainage cannula for insertion into the cavity with a drainage line with a flow impedance varying arrangement and a second medical instrument for insertion into the cavity with a suction line. The drainage and suction lines are connected to a suction pump. The device has a reservoir container (2) for the fluid connected to a controllable flushing pump (3), a delivery line (4) and a first medical instrument (5) with a flushing channel for insertion into a body cavity (1), a pressure sensor (6) on the pressure side of the pump, a drainage cannula (7) for insertion into the cavity with a drainage line (8) and a second medical instrument (9) for insertion into the cavity with a suction line (10). The drainage and suction lines are connected to a suction pump (11) and the drainage line has a controllable arrangement (12) for varying the throughflow resistance. Independent claims are also included for the following: (a) a method of operating an inventive device (b) and a hose set for an inventive device.

Description

Gebiet der Erfindung.Field of the invention.

Die Erfindung betrifft eine Vorrichtung zum Durchspülen einer Körperhöhle mit einem Fluid, mit einem Vorratsbehälter für das Fluid, mit einer an den Vorratsbehälter angeschlossenen, ansteuerbaren Spülpumpe, mit einer an eine Druckseite der Spülpumpe angeschlossenen Zuführleitung sowie mit einem an die Zuführleitung angeschlossenen ersten ärztlichen Instrument mit einem Spülkanal, welches in die Körperhöhle einführbar ist, wobei druckseitig der Spülpumpe ein Drucksensor zur Bestimmung eines Ist-Druckes eingerichtet ist, mit einer in die Körperhöhle einführbaren Drainagekanüle mit Drainageleitung, mit einem in die Körperhöhle einführbaren zweiten ärztlichen Instrument mit Absaugleitung, wobei ein durch die Körperhöhle einstellbarer Volumenstrom nach Maßgabe einer Betriebsstellung "an" oder "aus" des zweiten ärztlichen Instrumentes "hoch" oder "niedrig" ist, wobei die Drainagekanüle sowie die Absaugleitung an eine Saugpumpe angeschlossen sind, ein Verfahren zum Betrieb einer solchen Vorrichtung sowie eine Verwendung einer solchen Vorrichtung.The invention relates to a device for flushing a body cavity with a fluid, with a reservoir for the fluid, with a connected to the reservoir, controllable flushing pump, with a connected to a pressure side of the flushing pump supply line and with a connected to the supply line first medical instrument a flushing channel, which is insertable into the body cavity, wherein the pressure side of the flushing pump, a pressure sensor for determining an actual pressure is set up, with an insertable into the body cavity drainage cannula with drainage line, with an insertable into the body cavity second medical instrument with suction, wherein a through the body cavity adjustable volume flow in accordance with an operating position "on" or "off" of the second medical instrument "high" or "low", wherein the drainage cannula and the suction are connected to a suction pump, a method to m operation of such a device and a use of such a device.

Solche Vorrichtungen werden beispielsweise für endoskopische Untersuchungen, Distension oder Resektion von Geweben, insbesondere unter endoskopischer Kontrolle, eingesetzt. Eine Körperhöhle kann ein Gelenkhohlraum, z.B in einem Kniegelenk oder Schultergelenk, ein Hohlraum zwischen Muskeln oder Organen, oder auch ein einen Holhraum bildendes oder aufweisendes Organ selbst sein. Ein Fluid ist insbesondere ein Flüssigkeit. Dabei kann es sich um eine homogene flüssige Phase oder auch um eine Dispersion oder Emulsion handeln. Eine Drainagekanüle im Sinne der Erfindung kann neben der Drainagefunktion an sich auch weitere Funktionen erfüllen, wie beispielsweise ein Ausleuchten der Körperhöhle über eine in die Drainagekanüle integrierte Lichtquelle. Unterschiedliche Volumenströme bei unterschiedlichen Betriebsstellungen sind im Rahmen der Erfindung durch die Begriffe "hoch" und "niedrig" unterschieden, wobei die absoluten Werte irrelevant sind. Vielmehr wird mit diesen Begriffen lediglich zum Ausdruck gebracht, wie die Volumenströme relativ zueinander bei den jeweiligen Betriebstellungen des zweiten ärztliche Instruments sind.Such devices are used, for example, for endoscopic examinations, distension or resection of tissues, in particular under endoscopic control. A body cavity may be a joint cavity, eg in a knee joint or shoulder joint, a cavity between muscles or organs, or even an organ forming or having a holoharp. A fluid is in particular a liquid. It can be to be a homogeneous liquid phase or to a dispersion or emulsion. A drainage cannula in the sense of the invention can also fulfill other functions in addition to the drainage function, such as, for example, illuminating the body cavity via a light source integrated in the drainage cannula. Different volume flows at different operating positions are differentiated within the scope of the invention by the terms "high" and "low", the absolute values being irrelevant. Rather, these terms merely express how the volume flows are relative to one another in the respective operating positions of the second medical instrument.

Stand der Technik.State of the art.

Vorrichtungen des eingangs genannten Aufbaus sind beispielsweise aus den Literaturstellen US-4,902,277 , US-5,000,733 und EP-0 306 445 bekannt. Die Umschaltung der Absaugleistung auf fest voreingestellte Werte erfolgt durch Signalkontakte einer Bedienungseinheit für einen Shaver und Verwendung dieses Signals zur Steuerung einer Saug-Spülvorrichtung. Es erfolgt eine gleichzeitige Umschaltung der Absaugleistung zwischen Shaver und Drainagekanüle. Nachteilig bei der insofern bekannten Vorrichtung ist, daß bei Verwendung eines Shavers dem System von den Signalkontakten, typischerweise ein Fußschalter, die Betriebseinstellungen "an" und "aus" übermittelt werden müssen. Dies kann im einfachsten Fall durch Signalleitungen mit Steckverbindungen erfolgen. Dies ist aufwendig insbesondere im Aufbau. Des weiteren bestehen funktionelle Fehlermöglichkeiten, beispielsweise durch schlechte Kontakte aufgrund von Kontaktkorrosion und dergleichen. Schließlich unterliegen die Steckverbindungen durch vielfache Betätigung einem störenden Verschleiß. Ein besonders bedeutender Nachteil ist, dass der Shaver kompatibel zur Vorrichtung des eingangs genannten Aufbaus sein muß, da eine Signalisierung ausschließlich die digitale Information "an" und "aus" unfaßt und folglich die Steuerung in einer Steuereinheit jeweils auf das verwendete zweite ärztliche Instrument, beispielsweise der Shaver, eingestellt werden muß. Mangelt es einer solchen Einstellbarkeit, kann nur ein bestimmtes ärztliches Instrument an der Steuereinheit betrieben werden. Es mangelt im Ergebnis einer Kompatibilität zwischen einer einzigen Steuereinheit und mehreren verschiedenen ärztlichen Instrumenten und/oder gleichen ärztlichen Instrumenten verschiedener Hersteller und verschiedener Spezifikationen hinsichtlich des Strömungswiderstandes. Schließlich ist beim Stand der Technik nachteilig, daß mit der Signalisierung von Betriebsstellung "aus" zu "an" des zweiten ärztlichen Instrumentes körperhöhlenzuführseitig eine sofortige Hochregelung des Flusses erfolgt, während die erhöhte Abfuhr des Fluides durch das zweite ärztliche Instrument vergleichsweise langsam "hochfährt". Dadurch entsteht das Risiko eines medizinisch störenden Druckpeaks in der Körperhöhle.Devices of the structure mentioned above are for example from the literature US 4,902,277 . US 5,000,733 and EP-0 306 445 known. The switching of the suction power to fixed preset values is effected by signal contacts of a control unit for a shaver and use of this signal to control a suction flushing device. There is a simultaneous switching of the suction between shaver and drainage cannula. A disadvantage of the known device is that when using a shaver the system of the signal contacts, typically a foot switch, the operating settings "on" and "off" must be transmitted. This can be done in the simplest case by signal lines with connectors. This is expensive, especially in construction. Furthermore, there are functional error possibilities, for example by bad contacts due to contact corrosion and the like. Finally, the connectors are subject by multiple operation disturbing wear. A particularly significant disadvantage is that the shaver must be compatible with the device of the aforementioned structure, since a signaling exclusively the digital information "on" and "off" unfaßt and consequently the control in a control unit respectively to the second medical instrument used, for example the shaver, has to be set. Lack of such adjustability, only a specific medical instrument can be operated on the control unit. As a result, there is a lack of compatibility between a single control unit and a plurality of different medical instruments and / or medical instruments of different manufacturers and different flow resistance specifications. Finally, it is disadvantageous in the prior art that with the signaling of operating position "from" to "on" the second medical instrument Körperhöhlenzuführseitig an immediate up-regulation of the flow, while the increased removal of fluid through the second medical instrument comparatively slow "starts up". This creates the risk of a medically disturbing pressure peak in the body cavity.

Eine Vorrichtung gemäß dem Oberbegriff des Anspruchs 1 ist aus der US-6,024,277 bekannt.A device according to the preamble of claim 1 is known from US 6,024,277 known.

Technisches Problem der Erfindung.Technical problem of the invention.

Der Erfindung liegt das technische Problem zu Grunde, eine Vorrichtung zum Durchspülen einer Körperhöhle mit einem Fluid anzugeben, mittels welcher eine allen Anforderungen genügende Steuerung von Fluss und Druck erzielt wird, und zwar ohne das Erfordernis von Signalleitungen und unabhängig von dem eingesetzten zweiten ärztlichen Instrument.The invention is based on the technical problem to provide a device for flushing a body cavity with a fluid, by means of which all requirements sufficient control of flow and pressure achieved without the need for signal lines and whatever the second medical device used.

Grundzüge der Erfindung und bevorzugte AusführungsformenBroad features of the invention and preferred embodiments

Zur Lösung dieses technischen Problems lehrt die Erfindung im Kennzeichen des Anspruchs 1, daß allein die Drainageleitung mit ansteuerbaren Mitteln zur Variation des Durchflußwiderstandes ausgestattet ist, daß Spülpumpe, Drucksensor und Mittel zur Variation des Durchflußwiderstandes an Steuerein- oder -ausgänge einer Steuereinheit angeschlossen sind, wobei mittels der Steuereinheit ein Abfall des mittels des Drucksensors gemessenen Ist-Druckes von einem vorgegebenen Soll-Druck bei Umschaltung des zweiten ärztlichen Instrumentes aus der Betriebsstellung "aus" zu "an" detektierbar und in ein Steuersignal für die Mittel zur Variation des Durchflußwiderstandes, die Spülpumpe und/oder die Saugpumpe umwandelbar ist, und zwar nach Maßgabe einer voreingestellten Soll-Förderleistung der Spülpumpe und/oder der Saugpumpe für die Betriebsstellung "an" sowie des Soll-Druckes, und umgekehrt.To solve this technical problem, the invention teaches in the characterizing part of claim 1 that alone the drainage line is equipped with controllable means for varying the flow resistance, that rinsing pump, pressure sensor and means for varying the flow resistance to control inputs or outputs of a control unit are connected by means of the control unit, a drop of the measured by the pressure sensor actual pressure of a predetermined target pressure at switching the second medical instrument from the operating position "off" to "on" detectable and in a control signal for the means for varying the flow resistance, the purge pump and / or the suction pump is convertible, in accordance with a preset target flow rate of the flushing pump and / or the suction pump for the operating position "on" and the desired pressure, and vice versa.

Mit anderen Worten ausgedrückt, in beispielsweise der Betriebsstellung "aus" eines Shavers erfolgt die Absaugung des Fluids aus der Körperhöhle im wesentlichen über die Drainageleitung. Mit der Umschaltung des Shavers in die Betriebstellung "ein" wird gleichsam ein Bypass, nämlich die Absaugleitung zur Drainageleitung aktiviert mit der Folge eines (kurzzeitigen) Druckabfalls in der Körperhöhle. Dieser Druckabfall wird detektiert mit der Folge, daß der Fluss durch Ansteuerung der Spülpumpe auf einen vorgewählten (höheren als bei Shaver "aus") Wert heraufgefahren wird. Die Druckregelung kann dann bei konstantem Fluss mittels Ansteuerung der Saugpumpe erfolgen.In other words, in, for example, the operating position "off" of a shaver, the suction of the fluid from the body cavity takes place essentially via the drainage line. With the switching of the shaver in the operating position "on" as a bypass, namely the suction line to the drainage line is activated with the result of a (short-term) pressure drop in the body cavity. This pressure drop is detected, with the result that the flow by controlling the purge pump on a preselected (higher than Shaver "off") value is ramped up. The pressure control can then take place at constant flow by controlling the suction pump.

Mit der Erfindung wird erreicht, daß der Fluss und Druck in der Körperhöhle unabhängig voneinander frei regelbar und konstant haltbar sind, und zwar unabhängig von der Betriebsstellung des zweiten ärztlichen Instruments. Die Regelung des Flusses erfolgt mit den erfindungsgemäßen Mitteln zur Variation des Durchflußwiderstandes schneller als mit einer drehzahlgeregelten Rollenpumpe aufgrund der geringeren Massen und Trägheitsmomente der Mittel zur Variation des Durchflusswiderstandes. Die Anpassung des Flusses und ggf. Einstellung oder Nachregelung des Druckes erfolgt nach der Maßgabe der Betriebseinstellung "an" oder "aus" des zweiten ärztlichen Gerätes. Vorteilhaft ist auch, dass in der Körperhöhle auftretende Druckschwankungen vom System innerhalb sehr kurzer Zeit erkannt und auf den Soll-Wert des Druckes korrigiert werden, so dass der Druck in der Körperhöhle auch bei Umstellungen zwischen den Betriebstellungen des zweiten ärztlichen Instrumentes praktisch konstant gehalten wird. Ein weiterer Vorteil ist, dass jedes ärztliche Instrument ohne aufwendige Adaptierung von Signalleitungen und Steckverbindungen verwendet werden kann, da Steuerungs- und Regelungsmechanismen in jedem Fall für eine Einstellung und Konstanthaltung der voreingestellten Werte für Druck und Fluß sorgen. Schließlich ist die Anordnung der Mittel zur Variation des Durchflußwiderstandes im Rahmen der Drainageleitung sicherheitstechnisch vorteilhaft, weil die Druck- und Flussregelung bei Einschaltung des ärztlichen Instrumentes gleichsam nachläuft, wodurch gesundheitlich bedenkliche Druckspitzen vermieden werden. Gleichzeitig werden eventuelle Leckagen durch das Nachlaufen der Regelung automatisch und ohne zusätzlich Maßnahmen berücksichtigt und ausgeglichen. Letztendlich wird eine praktisch konstante Körperhöhlenausdehnung und entsprechend gute Sicht durch eine endoskopische Optik erreicht.With the invention it is achieved that the flow and pressure in the body cavity are independently controllable and constant durable independently of the operating position of the second medical instrument. The control of the flow takes place with the inventive means for varying the flow resistance faster than with a variable speed roller pump due to the lower masses and moments of inertia of the means for varying the flow resistance. The adaptation of the flow and, if necessary, adjustment or readjustment of the pressure takes place in accordance with the operating setting "on" or "off" of the second medical device. It is also advantageous that pressure fluctuations occurring in the body cavity are detected by the system within a very short time and corrected to the desired value of the pressure, so that the pressure in the body cavity is kept practically constant even with changes between the operating positions of the second medical instrument. Another advantage is that any medical instrument can be used without extensive adaptation of signal lines and connectors, as control and regulation mechanisms in each case provide for adjustment and maintenance of the preset values for pressure and flow. Finally, the arrangement of the means for varying the flow resistance in the context of the drainage line is technically advantageous because the pressure and flow control as it runs after the medical instrument is turned on, thereby avoiding health-threatening pressure peaks. At the same time Any leaks are automatically taken into account and compensated for by the overrun of the control automatically and without additional measures. Ultimately, a practically constant body cavity expansion and a correspondingly good view is achieved by endoscopic optics.

Das erste ärztliche Instrument kann ausgewählt sein aus der Gruppe bestehend aus "Spülsonde, Spülkanüle, Trokar mit Optik und Optik mit Spülkanal"The first medical instrument can be selected from the group consisting of "irrigation probe, irrigation cannula, trocar with optics and optics with irrigation channel"

Die Spülpumpe kann eine Antriebseinheit mit einem Motor mit rotierender Abtriebswelle sowie eine mit der Abtriebswelle (mechanisch, i.e. stoffschlüssig, formschlüssig oder kraftschlüssig, oder magnetisch, i.e. kraftschlüssig) verbundene und rotierend angetriebene Pumpeneinheit aufweisen, wobei die Förderleistung durch Ansteuerung der Drehzahl des Motors ansteuerbar ist. Insbesondere kommt insofern eine peristaltische Rollenpumpe in Frage. Alternativ kann die Spülpumpe einen elastischen Vorratsbehälter mit einer den Vorratsbehälter teilweise odder ganz ummantelnden ansteuerbaren Druckmaschette aufweisen, wobei die Förderleistung durch Ansteuerung der Druckmanschette ansteuerbar ist. Schließlich kann weiterhin alternativ die Spülpumpe einen höhenansteuerbaren Vorratsbehälter aufweisen, wobei die Förderleistung durch Ansteuerung der Höhe des Vorratsbehälters ansteuerbar ist.The flushing pump may have a drive unit with a motor with a rotating output shaft and with the output shaft (mechanical, ie cohesively, positively or non-positively, or magnetically, ie non-positively) connected and rotationally driven pump unit, the flow rate can be controlled by controlling the speed of the motor , In particular, insofar as a peristaltic roller pump comes into question. Alternatively, the rinsing pump can have an elastic reservoir with a supply container partially odder or completely enveloping controllable Druckmaschette, wherein the delivery rate can be controlled by driving the pressure cuff. Finally, alternatively, the flushing pump may comprise a height-controllable reservoir, wherein the flow rate can be controlled by controlling the height of the reservoir.

Das zweite ärztliche Instrument kann ausgewählt sein aus der Gruppe bestehend aus "Shaver, Probenentnahmegerät und Saugsonde". Insbesondere im Falle eines Shavers empfiehlt es sich, daß der Volumenstrom durch das zweite ärztliche Instrument in der Betriebsstellung "an" "hoch" ist und umgekehrt. Es ist aber ggf. auch der umgekehrte Zusammenhang möglich.The second medical device may be selected from the group consisting of "shaver, sampler and suction probe". Particularly in the case of a shaver, it is recommended that the volume flow through the second medical instrument in the operating position "on" is "high" and vice versa. But it is possibly also the reverse context possible.

Grundsätzlich können die Steuereinheit sowie die hiermit verbundenden Komponenten hydraulisch, pneumatisch oder elektrisch betrieben bzw. angesteuert werden. Bevorzugt ist der elektrische bzw. elektromechanische Betrieb.In principle, the control unit and the components connected thereto can be hydraulically, pneumatically or electrically operated or controlled. The electrical or electromechanical operation is preferred.

Die Mittel zur Variation des Durchflußwiderstandes können proportional, kontinuierlich oder in einer Mehrzahl von diskreten Schritten, ansteuerbar sein. Bevorzugt ist es, dass die Mittel zur Variation des Durchflußwiderstandes eine Schlauchabklemmvorrichtung mit einem Schlauch sind. Die Schlauchwandung des Schlauches besteht dann aus einem elastischen Werkstoff. Im Einzelnen können die Mittel zur Variation des Durchflußwiderstandes mit einer Stützfläche, auf welcher die Schlauchwandung des Schlauches aufliegt, aufweisen und mit einem Druckstück ausgestattet sein, mittels welchem auf die Schlauchwandung Druck in Richtung der Stützfläche ausgeübt werden kann. Bevorzugt ist, daß das Druckstück linear antreibbar und über ein Spindelgetriebe mit einem elektromotorischen Antrieb, vorzugsweise einem Schrittschaltmotor, verbunden ist. Je nach gewünschter Steuer- oder Regelcharakteristik können aber auch nichtlineare Funktionen zwischen einem Steuersignal und der Bewegung des Druckstückes eingerichtet sein. Beispiel hierfür wäre eine rotierend linear angetriebene runde Exzenterscheibe, deren Mantelfläche gegen die Schlauchwandung oder ein Druckstück läuft. Mittels einer Nockenscheibe lassen sich beliebige Kinematiken einrichten.The means for varying the flow resistance can be proportional, continuous or in a plurality of discrete steps, controllable. It is preferred that the means for varying the flow resistance is a Schlauchabklemmvorrichtung with a hose. The hose wall of the hose then consists of an elastic material. In detail, the means for varying the flow resistance with a support surface, on which the hose wall of the hose rests, have and be equipped with a pressure piece, by means of which on the hose wall pressure in the direction of the support surface can be exerted. It is preferred that the pressure piece is linearly driven and connected via a spindle gear with an electric motor drive, preferably a stepping motor. Depending on the desired control or regulating characteristic, however, non-linear functions can also be set up between a control signal and the movement of the pressure piece. An example of this would be a rotating linearly driven round eccentric disc, whose lateral surface runs against the hose wall or a pressure piece. By means of a cam disc can be set up any kinematics.

Es wird sich empfehlen, daß die Drainageleitung und die Absaugleitung bzw. die Saugpumpe letztendlich in ein Auffanggefäß münden.It will be recommended that the drainage line and the suction line or the suction pump eventually lead into a collecting vessel.

Die Erfindung lehrt desweiteren ein Verfahren zum Betrieb einer erfindungsgemäßen Vorrichtung, wobei bei Umschaltung eines zweiten ärztlichen Instrumentes zwischen zwei Betriebsstellungen, welche mit unterschiedlichem Fluß durch die Absaugleistung korreliert sind, mittels des Drucksensors und der Steuereinheit eine Druckveränderung detektiert wird, wobei mittels der Steuereinheit auf Detektion einer Druckveränderung die Mittel zur Variation des Durchflußwiderstandes angesteuert werden nach Maßgabe der Einregelung auf einen vorgegebenen und der aktiven Betriebstellung des zweiten ärztlichen Instrumentes zugeordneten Soll-Fluss und/oder Soll-Druck. Regelungstechnisch wird es sich empfehlen, daß auf Detektion einer Druckveränderung zusätzlich die Spülpumpe und/oder die Saugpumpe von der Steuereinheit angesteuert werden nach Maßgabe der Einregelung auf einen vorgegebenen und der aktiven Betriebstellung des zweiten ärztlichen Instrumentes zugeordneten Soll-Fluss und/oder Soll-Druck.The invention further teaches a method for operating a device according to the invention, wherein when switching a second medical instrument between two operating positions, which are correlated with different flow through the suction, a pressure change is detected by means of the pressure sensor and the control unit, wherein by means of the control unit to detection a pressure change, the means for varying the flow resistance are controlled in accordance with the adjustment to a predetermined and the active operating position of the second medical instrument associated desired flow and / or target pressure. Control technology, it is recommended that on detection of a pressure change additionally the flushing pump and / or the suction pump are controlled by the control unit in accordance with the adjustment to a predetermined and the active operating position of the second medical instrument associated desired flow and / or target pressure.

Im Folgenden wird die Erfindung anhand von lediglich ein Ausführungsbeispiel darstellenden Figuren näher erläutert.In the following the invention will be explained in more detail by means of only one embodiment illustrative figures.

Es zeigen:

Fig. 1:
eine schematische Gesamtdarstellung einer erfindungsgemäßen Vorrichtung
Fig. 2:
eine Detaildarstellung zu einem baulich besonders einfachen Mittel zur Variation des Durchflußwiderstandes und
Fig. 3:
eine schematische Darstellung eines erfindungsgemäß eingesetzten Schlauchsets sowie dessen Anordnung.
Show it:
Fig. 1:
a schematic overall view of a device according to the invention
Fig. 2:
a detailed representation of a structurally particularly simple means for varying the flow resistance and
3:
a schematic representation of a tube set according to the invention and its arrangement.

In der Figur 1 erkennt man eine Vorrichtung zum Durchspülen einer Körperhöhle 1 mit einem Fluid. Diese Vorrichtung ist mit einem Vorratsbehälter 2 für das Fluid und mit einer an den Vorratsbehälter 2 angeschlossenen, ansteuerbaren Spülpumpe 3 ausgestattet. An einer Druckseite der Spülpumpe 3 ist eine Zuführleitung 4 angeschlossenen. Die Zuführleitung 4 ist mit einem ersten ärztlichen Instrument mit einem Spülkanal 5, welches in die Körperhöhle 1 einführbar ist, versehen. Druckseitig der Spülpumpe 3 ist ein Drucksensor 6 zur Bestimmung eines Ist-Druckes eingerichtet.In the FIG. 1 can be seen a device for flushing a body cavity 1 with a fluid. This device is equipped with a reservoir 2 for the fluid and with a connected to the reservoir 2, controllable flushing pump 3. On a pressure side of the flushing pump 3, a supply line 4 is connected. The supply line 4 is provided with a first medical instrument with a flushing channel 5, which is insertable into the body cavity 1. On the pressure side of the flushing pump 3, a pressure sensor 6 is set up to determine an actual pressure.

Die dargestellte Ausführungsform ist mit einer in die Körperhöhle 1 einführbaren einfachen Drainagekanüle 7 mit Drainageleitung 8 und mit einem in die Körperhöhle 1 einführbaren zweiten ärztlichen Instrument 9 mit Absaugleitung 10 ausgestattet, wobei ein durch die Körperhöhle 1 einstellbarer Volumenstrom nach Maßgabe einer Betriebsstellung "an" oder "aus" des zweiten ärztlichen Instrumentes 9 "hoch" oder "niedrig" ist. Die Drainagekanüle 7 sowie die Absaugleitung 10 sind mit einer Saugpumpe 11 verbunden. Der Drainageleitung 8 enthält ansteuerbare Mittel zur Variation des Durchflußwiderstandes 12. Sowohl Spülpumpe 3, Drucksensor 6 als auch Mittel zur Variation des Durchflußwiderstandes 12 sind an Steuerein- oder -ausgänge einer Steuereinheit 13 angeschlossen.The illustrated embodiment is equipped with an insertable into the body cavity 1 simple drainage cannula 7 with drainage line 8 and with an insertable into the body cavity 1 second medical instrument 9 with suction 10, wherein an adjustable through the body cavity 1 volume flow in accordance with an operating position "on" or "out" of the second medical instrument 9 is "high" or "low". The drainage cannula 7 and the suction line 10 are connected to a suction pump 11. The drainage line 8 contains controllable means for varying the flow resistance 12. Both rinsing pump 3, pressure sensor 6 and means for variation the flow resistance 12 are connected to control inputs or outputs of a control unit 13.

In der Figur 2 erkennt man ein baulich besonders geeignetes Mittel zur Variation des Durchflußwiderstandes 12. Es handelt sich um eine Schlauchabklemmvorrichtung mit einem Schlauch 14, dessen Schlauchwandung 15 aus einem elastischen Werkstoff besteht. Die Schlauchabklemmvorrichtung weist eine Stützfläche 16 auf, auf welcher der Schlauch aufliegt 14, und ein Druckstück 17, mittels welchem auf die Schlauchwandung 15 Druck in Richtung der Stützfläche ausübbar ist. Das Druckstück 17 ist über ein Spindelgetriebe 18 mit einem elektromotorischen Antrieb 19 verbunden.In the FIG. 2 It can be seen a structurally particularly suitable means for varying the flow resistance 12. It is a Schlauchabklemmvorrichtung with a hose 14, the hose wall 15 is made of an elastic material. The Schlauchabklemmvorrichtung has a support surface 16 on which the hose rests 14, and a pressure piece 17, by means of which on the hose wall 15 pressure in the direction of the support surface can be exercised. The pressure piece 17 is connected via a spindle gear 18 with an electric motor drive 19.

Folgend wird die Betriebsweise dieser Ausführungsform der Erfindung näher erläutert. Die Saugpumpe 11 läuft mit einer Saugleistung, die bei Verwendung eines Shavers 9 dem in dessen Betriebstellung "an" entsprechenden Fluss entspricht, und wird in der Betriebsstellung "aus" von der Regelung 13 durch proportional und kontinuierlich regelbare Schlauchabklemmung 12 auf die gewünschte Drainageleistung reduziert. In Betriebsstellung "an" entsteht durch die Absaugleitung 10 über den Shaver ein Bypass, welcher an der Drainageleitung 8 vorbei führt. Der Körperhöhleninnendruck nimmt aufgrund der Addition der beiden Volumenströme durch Drainageleitung 8 und Absaugleitung 10 ab. Dieser Druckabfall wird vom Drucksensor 6 sehr schnell registriert. Die an den Drucksensor 6 angeschlossene Steuereinheit 11 detektiert den Abfall und erkennt hierdurch die Betriebsstellung "an" des Shavers und steuert über ein Steuersignal die Schlauchabklemmeinrichtung 12 an, welche die Drainageleitung 8 abklemmt. Gleichzeitig wird die Spülpumpe 3 auf eine Erhöhung der Pumpleistung auf einen vorgewählten Wert angesteuert. Durch Ansteuerung der Saugpumpe 11 erfolgt die Druckregelung durch Änderung der Pumpleistung nach Maßgabe des vorgewählten Druckes, welcher grundsätzlich und unabhängig von dieser konkreten Ausführungsform auch unterschiedliche vorgewählte Werte für die Betriebsstellungen des zweiten ärztlichen Instrumentes aufweisen kann. Wird der Shaver ausgeschaltet, steigt aufgrund des fehlenden Abflußstroms durch die Absaugleitung 10 der Körperhöhleninnendruck kurzzeitig an. Der Anstieg des Druckes über den vorgewählten Innendruck wird ebenfalls vom Drucksensor 6 registriert; es erfolgen die umgekehrten Prozesse, wie vorstehend beschrieben. Im Betriebszustand "aus" des Shavers kann der Druck über die Pumpleistung der Spülpumpe 3, über die Pumpleistung der Saugpumpe 11 und/oder über die Schlauchabklemmvorrichtung 12 geregelt werden.The operation of this embodiment of the invention will be explained in more detail. The suction pump 11 runs with a suction power, which corresponds to the use of a shaver 9 in the operating position "on" corresponding flow, and is reduced in the operating position "off" of the control 13 by proportional and continuously adjustable Schlauchabklemmung 12 to the desired drainage performance. In the operating position "on" is formed by the suction line 10 via the shaver a bypass, which leads to the drainage line 8 over. The body cavity internal pressure decreases due to the addition of the two volume flows through drainage line 8 and suction line 10. This pressure drop is registered very quickly by the pressure sensor 6. The control unit 11 connected to the pressure sensor 6 detects the waste and thereby recognizes the operating position "on" of the shaver and, via a control signal, activates the hose clamping device 12, which disconnects the drainage line 8. simultaneously the purge pump 3 is driven to increase the pump power to a preselected value. By controlling the suction pump 11, the pressure control is carried out by changing the pump power in accordance with the preselected pressure, which basically and independently of this specific embodiment may also have different preselected values for the operating positions of the second medical instrument. When the shaver is turned off, due to the lack of drainage flow through the suction line 10, the body cavity internal pressure briefly increases. The increase of the pressure above the preselected internal pressure is also registered by the pressure sensor 6; the reverse processes take place as described above. In the operating state "off" of the shaver, the pressure can be regulated via the pumping power of the flushing pump 3, via the pumping power of the suction pump 11 and / or via the hose clamping device 12.

Unabhängig von der vorstehenden Ausführungsform kann eine Bestimmung des wahren Innendruckes in der Körperhöhle 1 dadurch erfolgen, daß die Spülpumpe 3 und die Saugpumpe 11 angehalten werden, wobei der vom Drucksensor 6 erhaltene Messwert aufgrund der statischen Verhältnisse (Fluss ist praktisch null) dem wahren Innendruck entspricht. Dies kann alternierend mit der vorstehend beschriebenen erfindungsgemäßen Betriebsweise erfolgen. Des Weiteren ist es möglich, dass Meßwertunterschiede des Drucksensors in den insofern durchgeführten Intervallen (Fluss = voreingestellt / Fluss = 0) für eine interne Kalibrierung und Abstimmung auf das erste ärztliche Instrument 5 bzw. des Druckabfalls hierüber genutzt werden. Dann wird die Steuereinheit 13 diese Unterschiede berücksichtigen bei der vorstehend beschriebenen Regelung auf einen voreingestellten Soll-Druckwert, i.e. auf einen dengegenüber entsprechend höheren Messwert des Drucksensors 6 einregeln. Dies kann ggf. auch als im Wege einer nach Anschluss eines spezifischen ersten ärztlichen Instrumentes 5 bestimmten, gleichsam "erlernten" und in der Steuereinheit 13 abgespeicherten Kalibrierungskurve erfolgen. Es wird sich empfehlen, das "Erlernen" nach Anschluss eines ersten ärztliche Instrumentes und vor oder zu Beginn einer Behandlung durchzuführen.Regardless of the above embodiment, a determination of the true internal pressure in the body cavity 1 can be made by stopping the scavenge pump 3 and the suction pump 11, and the measured value obtained by the pressure sensor 6 corresponds to the true internal pressure due to the static conditions (flow is practically zero) , This can be done alternately with the above-described mode of operation according to the invention. Furthermore, it is possible that measured value differences of the pressure sensor in the intervals thus performed (flow = preset / flow = 0) are used for internal calibration and tuning to the first medical instrument 5 or the pressure drop across it. Then, the control unit 13 will take these differences into account in the above-described control Preset target pressure value, ie adjust to a correspondingly higher reading of the pressure sensor 6. If appropriate, this can also take place by means of a calibration curve determined as it were "learned" after connection of a specific first medical instrument 5 and stored in the control unit 13. It will be advisable to carry out the "learning" after the first medical device has been connected and before or at the beginning of a treatment.

Figur 3 zeigt ein Schlauchset für eine erfindungsgemäße Vorrichtung mit einem T-Stück 20 und an das T-Stück 20 angeschlossenen Schläuchen 21,22,23, wobei ein erster Schlauch 21 zum Anschluß an ein zweites ärztliches Instrument 9 bestimmt ist, wobei ein zweiter Schlauch 22 zumindest einen Teil der Drainageleitung 8 bildet, wobei ein dritter Schlauch 23 zum Anschluß an die Saugpumpe 11 bestimmt ist, wobei optional der erste Schlauch 21 und der dritte Schlauch 23 aus einem Polymer einer Härte von zumindest Shore A 70, vorzugsweise 75, und der zweite Schlauch 22 aus einem Polymer einer Härte von weniger als Shore A 70, vorzugsweise 65, gebildet ist. Das T-Stück ist 20 aus einem formstabilen Kunststoff gebildet und formschlüssig komplementär zu einer in baulicher Einheit mit einem Mittel zur Variation des Durchflusswiderstandes 12 eingerichteten T-Stück-Formschlussausnehmung 24 ausgebildet. Die bauliche Einheit aus Mittel zur Variation des Durchflußwiderstandes 12 und T-Stück-Formschlussausnehmung 24 ist ggf. lösbar an einer Gerätewandung befestigt, welche wiederum die Antriebsmittel für das Druckstück 17 trägt womit das Druckstück 17 gegen die Stützfläche 16 antreibbar und so den zweiten Schlauch 22 klemmend ist. Es versteht sich, daß der zweite Schlauch 22 zumindest im Bereich zwischen dem Druckstück 17 und der Stützfläche die vorstehend beschriebene niedrigere Shore Härte aufweist. Das Einlegen des T-Stückes 20 in die T-Stückformschlussausnehmung 24 und die Fixierung hierin ergeben sich unmittelbar aus einer vergleichenden Betrachtung der Teilfiguren der Figur 3. FIG. 3 shows a hose set for a device according to the invention with a T-piece 20 and connected to the tee 20 hoses 21,22,23, wherein a first tube 21 is intended for connection to a second medical instrument 9, wherein a second tube 22 at least forms a part of the drainage line 8, wherein a third tube 23 is intended for connection to the suction pump 11, wherein optionally the first tube 21 and the third tube 23 made of a polymer having a hardness of at least Shore A 70, preferably 75, and the second tube 22 is formed of a polymer having a hardness of less than Shore A 70, preferably 65. The T-piece 20 is formed of a dimensionally stable plastic and form-fitting complementary to a designed in structural unit with a means for varying the flow resistance 12 T-piece Formschlussausnehmung 24 is formed. The structural unit of means for varying the flow resistance 12 and T-piece Formschlussausnehmung 24 is optionally releasably attached to a device wall, which in turn carries the drive means for the pressure piece 17 whereby the pressure piece 17 against the support surface 16 driven and thus the second tube 22nd is clamping. It is understood that the second tube 22 at least in the area between the pressure piece 17 and the support surface has the lower Shore hardness described above. The insertion of the T-piece 20 in the T-piece form-fitting recess 24 and the fixation herein result directly from a comparative consideration of the sub-figures of FIG. 3 ,

Im Folgenden wird ein alternatives Verfahren zum Betrieb einer erfindungsgemäßen Vorrichtung beschrieben. Die Saugpumpe 11wird mit einer Saugkapazität (Fluss, Geschwindigkeit, Drehzahl) betrieben, welche einstellbar und folglich vorbestimmt ist auf einen Wert, welcher zum Betrieb des zweiten ärztlichen Instrumentes 9, beispielsweise eines Shavers 9, angemessen ist, jedoch nicht in Abhängigkeit von dem Druck in der Körperhöhle 1 geregelt und/oder gesteuert wird. Die Saugpumpe 11 wird vielmehr durch die Steuereinheit 13 kontinuierlich mit einer Geschwindigkeit angetrieben, die dem gewünschten Fluss durch das zweite ärztliche Instrument 9 in dessen aktiviertem Betriebszustand entspricht. Dadurch wird in den Schläuchen zwischen der Saugpumpe 11, dem zweiten ärztlichen Instrument 9 und den Mitteln zur Variation des Durchflusswiderstandes 12 ein Unterdruck erzeugt. Wenn nunmehr das zweite ärztliche Instrument 9 aktiviert wird, steigt der Fluss durch das zweite ärztliche Instrument 9 von null oder einem Minimalwert auf den Betriebswert an, wobei der Betriebswert des Flusses von der Einstellung der Geschwindigkeit der Saugpumpe 11, wie von einer Bedienperson eingestellt oder durch Programmierung der Steuereinheit 13 bestimmt, abhängt. Der Anstieg des Flusses durch das zweite ärztliche Instrument 9 (wobei die Position des Mittels zur Variation des Durchflusswiderstandes 12 zumindest anfänglich unverändert ist) führt zu einem Druckabfall in der Körperhöhle 1. Sobald der Druckabfall mittels des Drucksensors 6 detektiert wird, erhöht die Steuereinheit 13 den Fluss durch die Spülpumpe, beispielsweise durch Erhöhung der Geschwindigkeit/Drehzahl, um den Druckabfall zu kompensieren. Wenn durch Erhöhung des Flusses durch die Spülpumpe eine Kompensation (i.e. Einstellung auf den voreingestellten und zuvor eingeregelten Sollwert) nicht erreichbar ist, steuert die Steuereinheit 13 zusätzlich die Mittel zur Variation des Durchflusswiderstandes 12 zur Erhöhung des Durchflusswiderstandes an, wodurch der gesamte Fluss aus der Körperhöhle 1 zur Saugpumpe 11 reduziert wird. Letzteres setzt selbstverständlich voraus, dass die Mittel zu Variantion des Durchflusswiderstandes 12 auf eine Einstellung unterhalb des maximalen Durchflusswiderstandes angesteuert sind, wenn das zweite ärztliche Instrument 9 nicht aktiviert ist.In the following, an alternative method for operating a device according to the invention will be described. The suction pump 11 is operated with a suction capacity (flow, speed, rotational speed) which is adjustable and thus predetermined to a value which is appropriate for the operation of the second medical instrument 9, for example a shaver 9, but not in dependence on the pressure in the body cavity 1 is regulated and / or controlled. Rather, the suction pump 11 is continuously driven by the control unit 13 at a speed corresponding to the desired flow through the second medical instrument 9 in its activated operating condition. As a result, a negative pressure is generated in the hoses between the suction pump 11, the second medical instrument 9 and the means for varying the flow resistance 12. Now, when the second medical instrument 9 is activated, the flow through the second medical instrument 9 increases from zero or a minimum value to the operating value, wherein the operating value of the flow of the setting of the speed of the suction pump 11, as adjusted by an operator or by Programming the control unit 13 determines depends. The increase in flow through the second medical instrument 9 (where the position of the flow resistance variation means 12 is at least initially unchanged) results in a pressure drop in the patient Body cavity 1. Once the pressure drop is detected by the pressure sensor 6, the control unit 13 increases the flow through the mud pump, for example by increasing the speed to compensate for the pressure drop. If, by increasing the flow through the scavenge pump, compensation (ie setting to the preset and previously adjusted set point) is not achievable, the control unit 13 additionally controls the means for varying the flow resistance 12 to increase the flow resistance, thereby reducing the total flow from the body cavity 1 is reduced to the suction pump 11. Of course, the latter presupposes that the means for variant of the flow resistance 12 are actuated to a setting below the maximum flow resistance when the second medical instrument 9 is not activated.

Claims (9)

  1. A device for rinsing a body cavity (1) with a fluid,
    comprising a storage container (2) for the fluid, comprising a controllable rinsing pump (3) connected to the storage container (2), comprising a feed line (4) connected to a pressure side of the rinsing pump (3) and comprising a first medical instrument (5) connected to the feed line (4) and having a rinsing channel, said first medical instrument (5) being capable of being introduced into the body cavity (1), on the pressure side of the rinsing pump (3) a pressure sensor (6) for determining an actual pressure being provided,
    comprising a drainage cannula (7) being capable of being introduced into the body cavity (1) and having a drainage line (8),
    comprising a second medical instrument (9) being capable of being introduced into the body cavity (1) and having a suction line (10), an adjustable volume flow through the body cavity (1) being "high" or "low", according to the operating position "on" or "off" of the second medical instrument (9),
    the drainage line (8) and the suction line (10} being connected to a suction pump (11),
    and the pressure sensor being connected between the rinsing pump (3) and the outlet opening of the first medical instrument (5) outside of the body cavity (1),
    characterized in
    that solely the drainage line (8) is provided with controllable means for varying the flow resistance (12),
    that rinsing pump (3), pressure sensor (6), suction pump (11) and means for varying the flow resistance (12) are connected to control inputs or outputs of a control unit (13),
    wherein by means of the control unit (13) a drop of the actual pressure measured by means of the pressure sensor (6) from a given target pressure can be detected when switching the second medical instrument (9) from the operating position "off" to "on" and can be converted into a control signal for the means for varying the flow resistance (12), the rinsing pump (3) and/or the suction pump (11), according to a preset target capacity of the rinsing pump (3) and/or of the suction pump (11) for the operating position "on", and according to the target pressure, and vice versa.
  2. The device according to claim 1, characterized in that the first medical instrument (5) is selected from the group consisting of "rinsing probe, trocar with optical system, optical system with rinsing channel and rinsing cannula".
  3. The device according to claim 1 or 2, characterized in that the rinsing pump (3) comprises a drive unit with a motor having a rotating drive shaft and a pump unit, the capacity being controllable by controlling the speed of the motor, or that the rinsing pump (3) comprises an elastic storage container with a controllable pressure sleeve covering the storage container, the capacity being controllable by controlling the pressure sleeve, or that the rinsing pump (3) comprises a height-controllable storage container, the capacity being controllable by controlling the height of the storage container.
  4. The device according to one of claims 1 to 3, characterized in that the second medical instrument (9) is selected from the group consisting of "shaver and suction probe".
  5. The device according to one of claims 1 to 4, characterized in that the volume flow through the second medical instrument (9) in the operating position "on" is "high", and vice versa.
  6. The device according to one of claims 1 to 5, characterized in that the means for varying the flow resistance (12) are controllable proportionally continuously or with a multitude of discrete steps.
  7. The device according to one of claims 1 to 6, characterized in that the means for varying the flow resistance (12) are a hose clamping device with a hose (14), the hose wall (15) of which is made of an elastic material, with a support surface (16), on which the hose (14) rests, and with a pressure piece (17), by means of which a pressure can be exerted on the hose wall (15) in the direction of the support surface (16).
  8. The device according to one of claims 1 to 7, characterized in that the pressure piece (17) can be driven linearly.
  9. The device according to claim 8, characterized in that the pressure piece (17) is connected by a spindle gear box (18) with an electromotor drive (19), preferably a stepper motor.
EP03090226A 2002-07-19 2003-07-18 Device for irrigation of a body cavity Expired - Lifetime EP1382291B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE10233053 2002-07-19
DE10233053A DE10233053B4 (en) 2002-07-19 2002-07-19 Device for flushing a body cavity

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EP1382291A2 EP1382291A2 (en) 2004-01-21
EP1382291A3 EP1382291A3 (en) 2004-03-17
EP1382291B1 true EP1382291B1 (en) 2009-12-02

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EP (1) EP1382291B1 (en)
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DE (2) DE10233053B4 (en)

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DE10233053B4 (en) 2005-02-24
EP1382291A3 (en) 2004-03-17
ATE450190T1 (en) 2009-12-15
EP1382291A2 (en) 2004-01-21
DE10233053A1 (en) 2004-02-12
US7371224B2 (en) 2008-05-13
US20040133149A1 (en) 2004-07-08
DE50312176D1 (en) 2010-01-14

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